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20份水稻地方品种的全基因组重测序揭示爪哇稻基因组结构变异及粒重基因TGW2的等位基因型

Whole Genome Resequencing of 20 Accessions of Rice Landraces Reveals Javanica Genomic Structure Variation and Allelic Genotypes of a Grain Weight Gene TGW2.

作者信息

Long Weixiong, Luo Lihua, Luo Laiyang, Xu Weibiao, Li Yonghui, Cai Yaohui, Xie Hongwei

机构信息

Jiangxi Super-Rice Research and Development Center, Jiangxi Academy of Agricultural Sciences, National Engineering Center for Rice, Nanchang, China.

出版信息

Front Plant Sci. 2022 Apr 25;13:857435. doi: 10.3389/fpls.2022.857435. eCollection 2022.

Abstract

The landraces preserved by indigenous worldwide exhibited larger variation in the phenotypes and adaption to different environments, which suggests that they comprise rich resources and can be served as a gene pool for rice improvement. Despite extensive studies on cultivated rice, the variations and relationships between landraces and modern cultivated rice remain unclear. In this study, a total of 20 varieties that include 10 javanica collected from different countries worldwide and 10 indica from China were genotyped and yielded a sum of 99.9-Gb resequencing raw data. With the genomic sequence of the japonica cultivar Nipponbare as a reference, the following genetic features of single-nucleotide polymorphism (SNP) ranged from 861,177 to 1,044,617, insertion-deletion polymorphisms (InDels) ranged from 164,018 to 211,135, and structural variation (SV) ranged from 3,313 to 4,959 were identified in javanica. Variation between the two subspecies was also determined that 584,104 SNPs, 75,351 InDels, 104,606 SNPs, and 19,872 InDels specific to indica and javanica, respectively. Furthermore, Gene Ontology (GO) and KEGG of javanica-specific SNP-related genes revealed that they participated in DNA metabolic process, DNA replication, and DNA integration. The sequence variation and candidate grain shape-related gene were identified through Fst and sweep selective analysis. Hap4 of is performed better than others. The whole genome sequence data and genetic variation information illustrated in this study will serve as an important gene pool for molecular breeding and facilitate genetic analysis of javanica varieties.

摘要

世界各地土著保存的地方品种在表型和对不同环境的适应性方面表现出更大的变异性,这表明它们包含丰富的资源,可作为水稻改良的基因库。尽管对栽培稻进行了广泛研究,但地方品种与现代栽培稻之间的变异和关系仍不清楚。在本研究中,对总共20个品种进行了基因分型,其中包括从全球不同国家收集的10个爪哇稻品种和来自中国的10个籼稻品种,产生了总计99.9Gb的重测序原始数据。以粳稻品种日本晴的基因组序列为参考,在爪哇稻中鉴定出单核苷酸多态性(SNP)的以下遗传特征,范围从861,177到1,044,617,插入缺失多态性(InDels)范围从164,018到211,135,结构变异(SV)范围从3,313到4,959。还确定了两个亚种之间的变异,籼稻和爪哇稻分别有584,104个SNP、75,351个InDels、104,606个SNP和19,872个InDels。此外,爪哇稻特异性SNP相关基因的基因本体论(GO)和KEGG分析表明,它们参与DNA代谢过程、DNA复制和DNA整合。通过Fst和扫描选择分析鉴定了序列变异和候选粒形相关基因。Hap4的表现优于其他基因。本研究中展示的全基因组序列数据和遗传变异信息将作为分子育种的重要基因库,并促进爪哇稻品种的遗传分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c8b/9083905/43acec2090e4/fpls-13-857435-g001.jpg

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